Wound Healing Activity of Nanoclay/Spring Water Hydrogels
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García Villén, Fátima; Sánchez Espejo, Rita María; Borrego Sánchez, Ana María; Cerezo González, María Pilar; Viseras Iborra, César AntonioEditorial
MDPI
Materia
Sepiolite Palygorskite Spring water Hydrogel Fibroblasts Biocompatibility Wound healing
Date
2020-05Referencia bibliográfica
García-Villén, F., Faccendini, A., Miele, D., Ruggeri, M., Sánchez-Espejo, R., Borrego-Sánchez, A., ... & Sandri, G. (2020). Wound Healing Activity of Nanoclay/Spring Water Hydrogels. Pharmaceutics, 12(5), 467. [DOI: 10.3390/pharmaceutics12050467]
Sponsorship
German Research Foundation (DFG); Spanish research group CTS-946; Program for international mobility of PhD students (University of Granada)Abstract
Background: hydrogels prepared with natural inorganic excipients and spring waters are
commonly used in medical hydrology. Design of these clay-based formulations continues to be a
field scarcely addressed. Safety and wound healing properties of different fibrous nanoclay/spring
water hydrogels were addressed. Methods: in vitro biocompatibility, by means of MTT assay,
and wound healing properties were studied. Confocal Laser Scanning Microscopy was used to
study the morphology of fibroblasts during the wound healing process. Results: all the ingredients
demonstrated to be biocompatible towards fibroblasts. Particularly, the formulation of nanoclays
as hydrogels improved biocompatibility with respect to powder samples at the same concentration.
Spring waters and hydrogels were even able to promote in vitro fibroblasts motility and, therefore,
accelerate wound healing with respect to the control. Conclusion: fibrous nanoclay/spring water
hydrogels proved to be skin-biocompatible and to possess a high potential as wound healing
formulations. Moreover, these results open new prospects for these ingredients to be used in new
therapeutic or cosmetic formulations.